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A Review on Zinc Sulphide Thin Film Fabrication for Various Applications Based on Doping Elements 被引量:1

A Review on Zinc Sulphide Thin Film Fabrication for Various Applications Based on Doping Elements
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摘要 Zinc Sulfide (ZnS) thin film has attracted increasing attention due to their potential applications in the new generation of nano-electronics and opto-electronics devices. The physical and chemical properties of ZnS have outstanding quality for different applications. Moreover, ZnS doped with various elements are creating a new era for both academic research and industrial applications. So, the optical properties of modified ZnS thin film will help us to find a suitable doping element for convenient deposition which may enhance the conductance and transmitting properties of the film. This review work has been carried out to explore the four-modification elements that constitute Cu, Ni, Co & Fe as descending order of atomic number corresponding to Zn, along with some potential applications considering the recent research work with other doping elements too such as Al, C, Pt etc. For example, FE, FET, Catalytic, Solar cell, Electroluminescence, Fuel cell, different sensors (Chemical sensors, Bio-sensors, Humidity sensors, light sensors, UV light sensors) and nanogenerators use ZnS thin film. Zinc Sulfide (ZnS) thin film has attracted increasing attention due to their potential applications in the new generation of nano-electronics and opto-electronics devices. The physical and chemical properties of ZnS have outstanding quality for different applications. Moreover, ZnS doped with various elements are creating a new era for both academic research and industrial applications. So, the optical properties of modified ZnS thin film will help us to find a suitable doping element for convenient deposition which may enhance the conductance and transmitting properties of the film. This review work has been carried out to explore the four-modification elements that constitute Cu, Ni, Co & Fe as descending order of atomic number corresponding to Zn, along with some potential applications considering the recent research work with other doping elements too such as Al, C, Pt etc. For example, FE, FET, Catalytic, Solar cell, Electroluminescence, Fuel cell, different sensors (Chemical sensors, Bio-sensors, Humidity sensors, light sensors, UV light sensors) and nanogenerators use ZnS thin film.
出处 《Materials Sciences and Applications》 2018年第9期751-778,共28页 材料科学与应用期刊(英文)
关键词 ZNS ZNS Properties DOPING ELEMENTS (Cu Ni Co Fe) SENSORS Generators ZnS ZnS Properties Doping Elements (Cu Ni Co Fe) Sensors Generators
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  • 1Alivisatos, A. P. (1996). Semiconductor clusters, nanocrystals, and quantum dots. Science, 271,933-937.
  • 2Bhargava, R. N, Gallagher, D, & Welker, T. (1994). Doped nanocrystals of semi- conductors - A new class of luminescent materials. Journal of Luminescence, 60-61,275-280.
  • 3Bol, A. A, Ferwerda, J, Bergwerff, J. A, & Meijerink, A. (2002). Lumi- nescence of nanocrystalline ZnS:Cu^2+. Journal of Luminescence, 99, 325-334.
  • 4Chen, B, Zhong, H. Z, Li, R, Zhou, Y, Ding, Y, Li, Y, F, et al. (2012). Conjugated Polymer-assisted preparation of CdSe nanospheres and their photovoltaic prop- erties. Science of Advanced Materials, 4, 342-345.
  • 5Garlick, G. F. J, & Gibson, A. F. (1949). The luminescence of photo-conducting phos- phors.Journal of the Optical Society of America, 39, 935-940.
  • 6Geoffroy, A, & Bringuiel, E. (1992). Nonlinearity in the excitation yield of ZnS:Mn electroluminescent devices. Applied Physics Letters, 61, 3172-3174.
  • 7Gu, Y. B, Ta n, K,, & Lin, M, H. (2010 ). Surface binding on Ⅱ-Ⅵ semiconductor nanopar- ticles: A theoretical study. Jourrlal af Molecular Structure: THEOCHEM, 961, 62-65.
  • 8He, R, Qian, X, Yin, J,, xi, H, Bian, L, & Zhu, Z. (2003). Formation of monodispersed PVP-capped ZnS and CdS nanocrystals under microwave irra- diation. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 220, 151-157.
  • 9Henshaw, G, Parkin, 1. P, & Shaw, G. (1996). Convenient, low-energy synthesis of metal sulfides and selenides; PbE, Ag2E, ZnE, CdE (E=S,Se). Chemical Communi- cations, 10, 1095 - 1096.
  • 10Huang, J, Yang, Y, Xue, S, Yang, B, Liu, S, & Shen, J. (1997). Photoluminescence and electroluminescence ofZnS:Cu nanocrysrals in polymeric networks.Applied Physics Letters, 70, 2335-2337.

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